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CN105569876A - Gas feeding system, cylinder, reciprocating piston engine, and method for operating the same - Google Patents

Gas feeding system, cylinder, reciprocating piston engine, and method for operating the same Download PDF

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Publication number
CN105569876A
CN105569876A CN201510728293.XA CN201510728293A CN105569876A CN 105569876 A CN105569876 A CN 105569876A CN 201510728293 A CN201510728293 A CN 201510728293A CN 105569876 A CN105569876 A CN 105569876A
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CN
China
Prior art keywords
air supply
supply system
valve
nozzle
fuel gas
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201510728293.XA
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Chinese (zh)
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CN105569876B (en
Inventor
I·尼隆德
M·奥特
克里斯·哈塔尔
S·亨泽尔
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Winterthur Gas and Diesel AG
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Winterthur Gas and Diesel AG
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M21/00Apparatus for supplying engines with non-liquid fuels, e.g. gaseous fuels stored in liquid form
    • F02M21/02Apparatus for supplying engines with non-liquid fuels, e.g. gaseous fuels stored in liquid form for gaseous fuels
    • F02M21/0218Details on the gaseous fuel supply system, e.g. tanks, valves, pipes, pumps, rails, injectors or mixers
    • F02M21/0248Injectors
    • F02M21/0257Details of the valve closing elements, e.g. valve seats, stems or arrangement of flow passages
    • F02M21/026Lift valves, i.e. stem operated valves
    • F02M21/0269Outwardly opening valves, e.g. poppet valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D19/00Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures
    • F02D19/02Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures peculiar to engines working with gaseous fuels
    • F02D19/025Failure diagnosis or prevention; Safety measures; Testing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D19/00Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures
    • F02D19/02Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures peculiar to engines working with gaseous fuels
    • F02D19/026Measuring or estimating parameters related to the fuel supply system
    • F02D19/027Determining the fuel pressure, temperature or volume flow, the fuel tank fill level or a valve position
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D19/00Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures
    • F02D19/06Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures peculiar to engines working with pluralities of fuels, e.g. alternatively with light and heavy fuel oil, other than engines indifferent to the fuel consumed
    • F02D19/0602Control of components of the fuel supply system
    • F02D19/0613Switch-over from one fuel to another
    • F02D19/0615Switch-over from one fuel to another being initiated by automatic means, e.g. based on engine or vehicle operating conditions
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D19/00Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures
    • F02D19/06Controlling engines characterised by their use of non-liquid fuels, pluralities of fuels, or non-fuel substances added to the combustible mixtures peculiar to engines working with pluralities of fuels, e.g. alternatively with light and heavy fuel oil, other than engines indifferent to the fuel consumed
    • F02D19/0623Failure diagnosis or prevention; Safety measures; Testing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M21/00Apparatus for supplying engines with non-liquid fuels, e.g. gaseous fuels stored in liquid form
    • F02M21/02Apparatus for supplying engines with non-liquid fuels, e.g. gaseous fuels stored in liquid form for gaseous fuels
    • F02M21/0218Details on the gaseous fuel supply system, e.g. tanks, valves, pipes, pumps, rails, injectors or mixers
    • F02M21/0248Injectors
    • F02M21/0275Injectors for in-cylinder direct injection, e.g. injector combined with spark plug
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/30Use of alternative fuels, e.g. biofuels

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Biomedical Technology (AREA)
  • Health & Medical Sciences (AREA)
  • Fuel-Injection Apparatus (AREA)
  • Output Control And Ontrol Of Special Type Engine (AREA)
  • Analytical Chemistry (AREA)
  • Valve Device For Special Equipments (AREA)

Abstract

The invention relates to a gas feeding system, a cylinder, a reciprocating piston engine, and a method for operating the same. The gas feeding system (1) for the reciprocating internal combustion engine includes a gas inlet valve (2) with a gas inlet nozzle (3) which is configured to be arranged in a cylinder wall (41) of the cylinder (4) of the reciprocating piston engine, so that fuel gas (5) provided as fuel can be supplied to combustion space (42) of the cylinder (4) through the gas inlet nozzle (3) in a mounting state of the gas feeding system (1). According to the invention a monitor system for determining a position of the valve body (6) is provided for monitoring the fuel gas flowing in the combustion space (42).

Description

Air supply system, cylinder, stroke piston combustion engine and operating method thereof
Technical field
The present invention relates to the method for the air supply system with monitoring system of stroke piston combustion engine (particularly, for uniflow scavenging large two-stroke diesel engine), stroke piston combustion engine, the cylinder with air supply system and operation stroke piston combustion engine.
Background technique
Be commonly used for during large-scale diesel engine steamer driver element or also for fixing operation, such as, produce the high-rating generator of electric energy for driving.In this, motor runs with ongoing operation usually in considerable time section, makes the requirement of operating security and usability high like this.Maintenance shop long especially every in, therefore low-loss and economic manipulation of fuel and work materials are the central standard that operator operate machines.Except other determinant factor, the determinant factor that the piston operation action of this large-diameter slow-running diesel engine is maintenance gap length, usability, oiling agent consume, is also directly running cost and is therefore the determinant factor of operating efficiency.
Other necessary points of ever more important are quality of discharge for many years, especially, and the nitrous oxides concentration in discharge.The legal provision of corresponding waste gas emission standard and limit value are now more and more stricter, also will be stricter in the near future.Especially, this brings following consequence by for large two-stroke diesel engine: the burning of the typical heavy oil of contaminated thing heavily contaminated also has the burning of diesel oil or other fuel to become more more to be a problem, because observe waste gas emission standard will become more and more difficult, technically more complicated and therefore cost is higher, or because finally to these standards observe even obviously no longer may so that the motor of correspondence is by must shut-down operation or at least reequip with complexity and/or the high mode of cost.
In fact, therefore, need so-called " double fuel " motor for a long time, that is, the motor that two kinds of different fuel carry out operating can be used.In this, on the one hand, such as rock gas form (such as, so-called " LNG Liquefied natural gas " (LNG)) gas or the gas or be suitable for of form of liquid petroleum gas drive other gases of internal-combustion engine should be frequently burned, on the other hand, the another kind of fuel of such as gasoline, diesel oil, heavy fuel oil or other suitable liquid fuel can be burned in same motor.In this, motor can be two stroke engine and four stroke engine, and in this, they can be mini engines, medium duty engine or can also be big-block engine, especially, can also be such as be used as driver element in steamer but also time be usually used in producing the uniflow scavenging large-sized two-stroke oil-burning machine of electric energy in power station.
But, the demand of scrubbed gas motor (can only operate with gas and not alternatively with the motor that diesel oil, heavy oil or another kind of fuel operate) is also increased, day by day particularly when the high waste gas emission standard of needs; Economically and with gearing to actual circumstances this high waste gas emission standard can be observed by means of only the rational Technology effort of gaseous combustion.Such as, in WO2010147071A1, this scrubbed gas motor has been set forth.Other prior aries such as can see DE102010005814A1.
No matter be duel fuel engine or scrubbed gas motor, the process introduced by fuel gas in the combustion space of the cylinder of corresponding stroke piston combustion engine has been all decisive important function for the reliable safety operation of this motor.
In this, the air supply system be fed to by fuel gas in the combustion space of stroke piston combustion engine has multiple different function, and these functions influence each other in addition in a certain way, and different partial functions must accurately be coordinated mutually.In addition, the precise arrangements of air supply system can (such as, inter alia) depend on given or preferred serviceability, such as, motor mainly operation or whether must carry out frequent variations between these operator schemes in scope at full capacity or in partial load region.Or motor is such as duel fuel engine or scrubbed gas motor.Or the embodiment of air supply system also can be depending on the engine construction size of the stroke piston combustion engine that technician itself is familiar with, engine power, discharge capacity, preferred range of revolution or other constructed variables or serviceability.
In this, especially, for large-sized two-stroke diesel engine, air supply system not only has the function of measuring the amount of the gas be introduced in engine combustion space, as four stroke engine fully requires often.For large-sized two-stroke diesel engine, among other requirements, the gas introduced by air supply system is with the correct of scavenging air and to mix reliably be more conclusive (inter alia).
Other main point relate to the handling safety of motor.If all or part of inefficacy of air supply system, then such as excessively a large amount of gas can be introduced in the combustion space of motor, if do not take suitable safety measure to prevent.The a large amount of gas of this mistake in the combustion space of motor can such as cause in vent systems or large-scale diesel engine scavenging system in controllably do not explode, this can bring following result: corresponding overheating components or even impaired, so that in worst case, whole motor can lose efficacy, catastrophic effect can be produced to high sea especially like this, even can cause losing whole steamer.
But even if the consequence of this fault is not huge like this, this not too serious interference also can cause harmful shortcoming.
If such as cause air supply system due to defect respectively by crossing a large amount of or crossing in the combustion space of gas introducing motor in a small amount, then can produce sizable negative effect to the discharge value of such as amount of nitrogen oxides or other discharge values like this.
Or, but, when operating with gas (such as, using above-mentioned LNG), partial combustion and and then phenomenon known to the skilled (such as, being worth too high Methane slip) air supply system fault can be caused.If (that is the motor of correspondence now uses gas, with gas mode) operate, when being then derived from burning, the waste gas of air supply system fault can comprise a large amount of methane and/or formaldehyde emissions (and other), these discharges can be such as caused by the spontaneous cooling of the combustion flame (" burning quenching ") in the combustion process on cylinder wall or can be not closing outlet valve while, scavenging is carried out to cylinder with fresh air stage in discharge or can discharge differently.
If gas in inappropriate mode (such as, with inappropriate pressure or with inappropriate injection geometrical shape, with inappropriate angle, with out of position) be introduced in combustion space or otherwise by the combustion space of inappropriate introducing motor, then there will be similar effect.
If the methane concentration such as in exhaust is high accordingly due to this serviceability, then the safety operation of motor can be similarly impaired thus.Such as, there is the methane risk that (in the region in the region such as, in gas exhaust manifold or before turbosupercharger or even in turbosupercharger) lights in vent systems.In worst case, methane lighting in vent systems can cause being exposed to methane gas to light the corresponding assembly of this deleterious effects impaired.In addition, methane is the great greenhouse gases of effect, and as is known, larger than carbon dioxide at least 25 times of the effect of methane, can produce remarkable adverse influence to the calculating of so-called " energy efficient design index " (EEDI).
Often to use and highstrung oxidation catalyst also can be significantly impaired because being vented the fault of supply system and the consequence brought thus, and in worst case, can be only after short times irretrievablely impaired, thus, other safe and reliable operations of motor are at least deposit doubt, can not carry out in worst case.
Summary of the invention
Therefore, the object of this invention is to provide the air supply system of the uniflow scavenging large two-stroke diesel engine for having air supply system, cylinder (especially, cylinder liner) or stroke piston combustion engine is (especially, there is the uniflow scavenging large two-stroke diesel engine of air supply system), they can be applicable to different motors or different serviceability and requirement neatly, make to transform in motor former under specific circumstances, or available engine can be reequiped or be applicable to other operator schemes or serviceability simply flexibly.In this, gas safety reliably should be guaranteed to introduce in the combustion space of stroke piston combustion engine, and should (but not only) guarantee to mix ideally with scavenging air in combustion space especially when uniflow scavenging large two-stroke diesel engine.In addition, reliably should guarantee that air supply system and assembly thereof do not leak.
Meet the air supply system for stroke piston combustion engine of the present invention of these objects, the cylinder of uniflow scavenging large two-stroke diesel engine, stroke piston combustion engine, operation stroke piston combustion engine method to realize.
Therefore the present invention relates to a kind of air supply system for stroke piston combustion engine, especially for the air supply system of uniflow scavenging large two-stroke diesel engine, wherein, described air supply system comprises the suction valve with nozzle of air supply, described nozzle of air supply is configured to described nozzle of air supply and can be arranged in the cylinder wall of the cylinder of described stroke piston combustion engine, makes the combustion space that can be supplied to described cylinder by the fuel gas provided as fuel by the described nozzle of air supply under the installment state of described air supply system.In this, described suction valve comprises pressure space, and described pressure space is arranged in valve shell, and described fuel gas can be provided in described pressure space via gas feed to store in operational conditions and to be fed in described nozzle of air supply.Valve body is provided with in described pressure space, described valve body has the valve disc that is arranged in valve shaft place and has valve seat, described valve seat coordinates hermetically with described valve disc under the closed state of described valve body, make to forbid described fuel gas to be fed to described nozzle of air supply from described pressure space, and by operating with described valve shaft the valve actuator be connected, described valve disc can be lifted away from described valve seat, make described fuel gas under the open mode of described valve body, described nozzle of air supply can be fed to from described pressure space through described valve disc.According to the present invention, be provided with the monitoring system for determining valve body position, described monitoring system is for monitoring the fuel gas flowed in combustion space.
By the operating security improving motor according to monitoring system of the present invention clearly.If all or part of inefficacy of air supply system, then such as excessively a large amount of gas can be introduced in the combustion space of motor, if do not take suitable safety measure to prevent.The a large amount of fuel gas of this mistake in the combustion space of motor can such as cause in vent systems or large-scale diesel engine scavenging system in controllably do not explode, this to bring following result: corresponding overheating components or even impaired, so that in worst case, whole motor can lose efficacy, catastrophic effect can be produced to high sea especially like this, even can cause losing whole steamer.
But even if the consequence of this fault is not huge like this, this not too serious interference also can cause harmful shortcoming.
If such as cause air supply system due to defect respectively by crossing a large amount of or crossing in the combustion space of gas introducing motor in a small amount, then can produce sizable negative effect to the discharge value of such as amount of nitrogen oxides or other discharge values like this.
Or, but, when operating with gas (such as, using above-mentioned LNG), partial combustion and and then phenomenon known to the skilled (such as, being worth too high Methane slip) air supply system fault can be caused.If (that is the motor of correspondence now uses gas, with gas mode) operate, when being then derived from burning, the exhaust of air supply system fault itself can comprise a large amount of methane and/or formaldehyde emissions (and other), these discharges can be such as caused by the spontaneous cooling of the combustion flame (" burning quenching ") in the combustion process on cylinder wall or can be not closing outlet valve while, scavenging is carried out to cylinder with fresh air stage in discharge or can discharge differently.
If gas in inappropriate mode (such as, with inappropriate pressure or with the geometrical shape of inappropriate injection injection, with inappropriate angle, with out of position) be introduced in combustion space or otherwise by the combustion space of inappropriate introducing motor, then there will be similar effect.
If the methane concentration in such as exhaust gas is high accordingly due to this serviceability, then the safety operation of motor can be similarly impaired thus.Such as, there is the methane risk that (in the region in the region such as, in gas exhaust manifold or before turbosupercharger or even in turbosupercharger) lights in vent systems.In worst case, methane lighting in vent systems can cause being exposed to methane gas to light the corresponding assembly of this deleterious effects impaired.In addition, methane is the great greenhouse gases of effect, and as is known, larger than carbon dioxide at least 25 times of the effect of methane, can produce remarkable adverse influence to the calculating of so-called " energy efficient design index " (EEDI).
Often to use and highstrung oxidation catalyst also can be significantly impaired because being vented the fault of supply system and the consequence brought thus, and in worst case, can be only after short times irretrievablely impaired, thus, other safe and reliable operations of motor are at least deposit problematic, can not carry out in worst case.
By the present invention, can also reliably avoid the problem that these parts are very serious first.
For this purpose, the monitoring system of the position for determining described valve body can be comprised according to air supply system of the present invention, described monitoring system is for monitoring the fuel gas flowed in combustion space, wherein, described monitoring system is path sensor, described path sensor is electricity or electromagnetic path sensor in particular, inductance, electric capacity or optical path sensor specifically, make each position (especially, described suction valve opens or cuts out) reliably can detecting described valve body at any time.
In this, described monitoring system is particularly preferably carried out signal with monitoring cell and is communicated, the position of described valve body in operational conditions can be detected by described monitoring cell, therefore, it is possible to depend on the crank angle of described stroke piston combustion engine and/or depend on the scavenging air valve position of described stroke piston combustion engine, forbid fuel gas to be fed to described nozzle of air supply.Therefore, pass through the present invention, the fault of air supply system not only can be detected first, and depend on fault security protocol is arranged into operation, make such as automatically to forbid fuel gas being fed to air supply system and preferably automatically closing described stroke piston combustion engine, and particularly preferably automatically switch to the operation undertaken by the alternative fuel of such as diesel oil or heavy oil.
In this, described gas handling system is preferably constructed such that for driving the described valve actuator of described valve shaft to be machinery, electricity or air pressure valve driver, hydrovalve driver in particular, wherein, particularly preferably, in order to closed described valve body, be provided with the resetting means worked against described valve actuator, the form of described resetting means specifically in Returnning spring.
In the embodiment of particular importance actually, described valve shaft is directed in the bullport of shaft housing.In this, hydraulic oil can act on described bullport under sealing load, the gas pressure of the fuel gas that described sealing load is used in counter pressure space seals, described sealing load, preferably higher than the fuel gas pressure of the described fuel gas in described pressure space, makes it possible to substantially to prevent described fuel gas from infiltrating in described bullport or described fuel-air is flowed out by described bullport.
Sealing load preferably higher than the fuel gas in pressure space this fact of fuel gas pressure not necessarily, because do not have fuel gas can enter in other assemblies of air supply system along valve shaft by not controlled way, especially, do not enter in the hydraulic unit driver of valve shaft, that is, can not leak gas, or at valve shaft place or there will be along valve shaft and only have a small amount of gas leakage by the technically unconspicuous of fabulous control.Valve shaft is necessary corresponding reliable sealing therefore, system before such as attempts carrying out this reliable sealing with corresponding seal ring, but it is verified, this is disadvantageous on the whole, because seal ring does not also show any sufficient sealing effect relative to the fuel gas of pressurization, or also such as cross quick-wearing due to the friction phenomenon occurred under serviceability, therefore ultimate cost is too high and excessively unreliable.
By the present invention, also reliably avoid these problems first.
In the mode of execution of particular importance actually, described nozzle of air supply is connected to described suction valve removably and is connected to described cylinder wall in removable mode, and the nozzle-axis of described nozzle of air supply is arranged to become predetermined angle relative to the valve axis of described suction valve, described fuel gas under the operation and installation state of described air supply system can be injected in the described combustion space of described cylinder with the predetermined angle being not equal to zero relative to the radial direction of described cylinder and/or axial direction.
So, this angle be called as injection angle, this injection angle is the supplementary angle of the angle between the nozzle-axis of nozzle of air supply and the valve axis of suction valve, that is, injection angle and the angle between nozzle-axis and valve axis complimentary to one another, form 180 °.Injection angle preferably equals the angle between 10 degree and 80 degree, the angle particularly preferably between 10 degree and 35 degree; Injection angle is roughly 22.5 degree particularly.
Therefore valve is comprised according to air supply system of the present invention, described valve has the valve shaft of band valve disc as primary element, wherein, the gas of aequum is introduced in combustion space by conventional hydraulic control valve (likely, by nozzle and suitable nozzle passage) via the valve disc coordinated with valve base sealing in closed state.
Air supply system therefore can first for being fed in the combustion space of stroke piston combustion engine by fuel gas, due to its two-piece type mode of execution, cause its have before unknown flexibility.Be preferably connected to suction valve removably due to nozzle of air supply and be preferably connected to cylinder wall in removable mode, therefore can be dependent on the requirement about the specific combustion position in the combustion space of stroke piston combustion engine, change such as nozzle of air supply individually from suction valve, make can be simply implemented for different injecting conditions fuel gas is expelled in combustion space and can coordinate for the requirement of change ideally.
In other embodiment, the nozzle-axis of nozzle of air supply of the present invention can be arranged to become predetermined angle relative to the valve axis of suction valve in addition, and fuel gas can be mapped in the combustion space of cylinder with the predetermined injection subscript being not equal to zero under the operation and installation state of air supply system.This is particular importance, because can take into account following two major functions of gas nozzle thus simultaneously: on the one hand, by using the nozzle of air supply of the situation be suitable in combustion space, can carry out accurate measurement under the most changeable operating conditions.And, on the other hand, by accurately select inject angle and by accurately select inject spray or multiple injection spray geometrical shape so that guarantee ideal burning realize scavenging air and fuel gas ideal mixing, make especially, required emission standard can be observed, on the other hand, fuel consumption can be reduced to minimum.
This means, by the present invention, the multiple difference in functionalitys affected each other in a specific way in addition can accurately cooperatively interact first.Therefore, such as, by the careful design of air supply system, particularly, by selecting suitable nozzle of air supply, given or preferred serviceability (and other) can be paid close attention to ideally, such as, motor normally operation or whether must carry out frequent variations between these operator schemes in scope at full capacity or in partial load region.Or responsible motor is that duel fuel engine or scrubbed gas motor select nozzle of air supply ideally.Or, when regulating or change overall air supply system, the embodiment of air supply system such as can also be flexibly set into engine construction size, engine power, discharge capacity, preferred range of revolution or other constructed variables or serviceability that are suitable for the stroke piston combustion engine that technician itself is familiar with first.Use according to air supply system of the present invention, only have such as nozzle of air supply therefore by suitable selection, correspondingly must to change, and suction valve oneself can be kept simultaneously.
In this, especially, for large-sized two-stroke diesel engine, air supply system not only has the function of measuring the amount of the gas be introduced in engine combustion space, as four stroke engine fully requires often.For large-sized two-stroke diesel engine, as already mentioned, among other requirements, the gas introduced by air supply system and scavenging air correct and to mix reliably be more conclusive (inter alia), this takes into full account first according to air supply system of the present invention.
As other measures, according to the present invention, in order to improve mixing or optimizing the process introduced by fuel gas in cylinder further of fuel gas and scavenging air, described nozzle of air supply also can have multiple nozzle opening.
Two nozzle openings can also differently arrange, and make described fuel gas can introduce in described combustion space by two different injection angles, thus, such as, can realize the better distribution in combustion space.
Or, alternatively or side by side, two nozzle openings can differently be designed, and described fuel gas can be introduced in described combustion space with two different injection volumes and/or with two different flowing velocities and/or with two different injection geometrical shapies by described two nozzle openings.
In addition, the present invention relates to a kind of cylinder with the uniflow scavenging large two-stroke diesel engine of air supply system described above in detail, particularly, cylinder liner, wherein, described air supply system is particularly preferably arranged in the region between the top dead center being in the piston of described stroke piston combustion engine in described cylinder and lower dead center, particularly, described region is the region reaching 20% to 80%, preferably 45% to 65%, particularly preferably 50% to 60% of spacing between described top dead center and described lower dead center away from described top dead center of described cylinder.That is, find, fuel gas can be realized thus and even more preferably mix with scavenging air.Thus, in the thermal exhaust that fuel gas can also be avoided to be injected into still in cylinder liner, fuel gas can be lighted ahead of time thus, is positioned at the same with the situation of the position that the top dead center at cylinder liner place adjoins as air supply system in prior art.
In addition, the present invention relates to the stroke piston combustion engine with above-mentioned air supply system, wherein, described stroke piston combustion engine is particularly preferably duel fuel engine, described duel fuel engine is for burning described fuel gas and alternatively for other fuel that burn, especially, for burning diesel oil or heavy oil.
In another embodiment, also can be can the scrubbed gas motor of a fuel gas (that is, not having other fuel) naturally according to stroke piston combustion engine of the present invention.
The present invention especially also relates to a kind of method that operation has the stroke piston combustion engine according to air supply system of the present invention, wherein, as has been described, detect the fault of described air supply system in operational conditions, forbid described fuel gas to be fed to described air supply system, and preferably automatically switch described stroke piston combustion engine and particularly preferably automatically switch to the operation undertaken by the alternative fuel of such as diesel oil or heavy oil.
Accompanying drawing explanation
The present invention is illustrated in greater detail hereinafter with reference to schematic diagram.Show:
Fig. 1 has the particularly preferred mode of execution according to air supply system of the present invention of suction valve and nozzle of air supply.
Embodiment
Fig. 1 there is shown for illustration of the interactional signal of different assembly be positioned at the cylinder liner place of stroke piston combustion engine, according to the Basic Design of air supply system of the present invention, stroke piston combustion engine is here appointed as with being illustrated has uniflow scavenged large two-stroke diesel engine, but for the purpose of clear, do not illustrate in greater detail this large two-stroke diesel engine, be very familiar to this is because the Basic Design of uniflow scavenging large two-stroke diesel engine is technician.Hereinafter, integrally will represent according to air supply system of the present invention with reference number 1.
Be arranged on and comprise the suction valve 2 with nozzle of air supply 3 according to Fig. 1 according to the embodiment of air supply system 1 of the present invention in uniflow scavenging large two-stroke diesel engine, nozzle of air supply 3 is designed and is arranged in the cylinder wall 41 of the cylinder 4 of stroke piston combustion engine, makes the combustion space 42 (not illustrating in greater detail) being supplied to cylinder 4 by the fuel gas 5 that provides as fuel by the nozzle of air supply 3 under the installment state of air supply system 1.In this, suction valve 2 comprises the pressure space 22 be arranged in valve shell 21, and fuel gas 5 can be provided in pressure space 22 via gas feed 23, to store in operational conditions and to be fed in nozzle of air supply 3.
In pressure space 22 itself or in the region of pressure space 22, valve body 6 is set, valve body 6 has the valve disc 62 that is arranged on valve shaft 61 and has valve seat 63, valve seat 63 coordinates hermetically with valve disc 62 under the closed state of valve body 6, makes to forbid fuel gas 5 to be fed to nozzle of air supply 3 from pressure space 22.
For this purpose, by operating with valve shaft 61 valve actuator 7 be connected, valve disc 62 being lifted away from valve seat 63, making fuel gas 5 under the open mode of valve body 6, nozzle of air supply 3 can be fed to from pressure space 22 through valve disc 62.
According to the present invention, nozzle of air supply 3 is connected to suction valve 2 removably and is connected to cylinder wall 41 in removable mode, wherein, the nozzle-axis D of nozzle of air supply 3 is arranged to become predetermined angle relative to the valve axis V of suction valve 2, and fuel gas 5 under the operation and installation state of air supply system 1 can be injected in the combustion space 42 of cylinder 4 relative to radial direction R and/or relative to the axial direction A of cylinder 4 with the predetermined angle being not equal to zero.
In this, this angle is called as the injection angle β relative to radial direction, injection angle β is the supplementary angle of the angle [alpha] between the nozzle-axis D of the nozzle of air supply 3 and valve axis V of suction valve 2, that is, injection angle β and the angle [alpha] between nozzle-axis D and valve axis V complimentary to one another, form 180 °; Therefore β=180 °-α is obtained.Injection angle β preferably equals between 10 degree and 80 degree, particularly preferably, between 10 degree and 35 degree; Injection angle is roughly 22.5 degree particularly.
Relative to axial direction, injection angle β is preferably 90 °, and that is, fuel gas 5 is preferably perpendicular to axial direction A injection, that is, injects abreast in the plan of Fig. 1 or with piston face.
In this, relatively simple nozzle of air supply 3 only has a nozzle opening 31.But, in another embodiment, nozzle of air supply 3 in fact can also have multiple nozzle opening 31, wherein, such as, two nozzle openings 31 can differently arrange, make fuel gas 5 can by two different introducing combustion spaces, injection angle 42, and/or wherein, two nozzle openings 31 can also or can be differently configured simultaneously, and fuel gas 5 can be introduced in combustion space 42 with two different injection volumes and/or with two different speed and/or with two different injection geometrical shapies by two nozzle openings 31.
In addition, in fact, can arrange and flow into fuel gas in combustion space 42 and the monitoring system clearly do not illustrated in FIG for the position of determining valve body 6 for monitoring, described monitoring system is particularly preferably path sensor, especially, electricity or electromagnetic path sensor (particularly, inductance, electric capacity or optical path sensor).Described monitoring system and monitoring cell carry out signal and communicate, the position of valve body 6 under serviceability can be detected by described monitoring cell and the crank angle of responsible stroke piston combustion engine and/or depend on the position of scavenging air valve of stroke piston combustion engine, automatically forbid fuel gas to be fed to nozzle of air supply 3.
According in the mode of execution of Fig. 1, for driving the valve actuator 7 of valve shaft 61 to be hydrovalve drivers 7, the function of hydrovalve driver 7 and operate that normally technician is familiar with.In order to closed valve body 6, the resetting means 8 worked against valve actuator 7 is set, the form of resetting means 8 in Returnning spring 81.
Valve shaft 61 is directed in the bullport 91 of shaft housing 9, wherein, hydraulic oil 10 can act on bullport 91 under sealing load PA, described sealing load PA, now higher than the fuel gas pressure BG of the fuel gas 5 in pressure space 22, makes it possible to substantially prevent fuel gas 5 from infiltrating in bullport 91.
Low-pressure gas system is preferably constructed to according to air supply system of the present invention.This means, it is 100 bar (10MPa) that fuel gas 5 is expelled to injection pressure in the combustion space 42 of cylinder 4 maximum.This injection pressure preferably maximum be 50 bar (5MPa) and particularly preferably maximum be 20 bar (2MPa).Gas pressure (that is, fuel gas is expelled to the pressure in cylinder) is not usually constant during operation of internal combustion engine, but can be dependent on the load of such as internal-combustion engine or rotational speed and change a little.
For according to air supply system of the present invention or for according to cylinder of the present invention, in a preferred embodiment, seek fuel gas 5 and be expelled to gas pressure little as far as possible in combustion space 42.Therefore the maximum injection pressure of fuel gas 5 can also be such as 15 bar or even less.
The injection pressure of fuel gas 5 little as far as possible provides large advantage at secure context naturally.In addition, whole air supply system only must be configured to this quite little operation pressure, this quite little operation pressure is for system sealing, for such as appearing at the power of valve seat 63, be particularly advantageous for the structure of valve actuator 7 and for the pressure load of gas-guide pipeline or its link in addition.Also do not need special high pressure compressor (with described high pressure compressor, fuel gas 5 must be compressed to such as 350 bar or even higher operation pressure when high-pressure system), this is also favourable in economy and cost.
Especially, relative to the injection pressure of fuel gas 5 little as far as possible, therefore, if suction valve 2 and nozzle of air supply 3 are arranged in cylinder wall 41 or in cylinder liner and and the top dead center of piston movement (topdeadcenter) at a distance of interval large as far as possible, be then particularly preferred.That is, compression pressure in cylinder still relatively little (must towards cylinder injected fuel gas 5) can be realized thus.When discharging scavenging air slit when piston moves down in uniflow scavenging large two-stroke diesel engine, scavenging air starts to flow in cylinder.This process occurs for a long time, until piston closes scavenging air slit again completely when it moves up subsequently.Only have when scavenging air valve (here, outlet valve) closed and completely closed time-usually after scavenging air slit is closed-because piston moves up, cause the pressurized air in cylinder to start to raise, until it reaches its maximum value, such as, when the piston is in the top dead point.
Therefore, preferably, when also injecting without any there is fuel gas during king-sized compression pressure in cylinder, and preferably, before outlet valve closes, there is the injection of fuel gas 5.
For this reason, preferably, if be arranged on nozzle of air supply 3 in cylinder wall 41 relative to axial direction A and top dead center at a distance of spacing large as far as possible, be then preferred.On the other hand, the structure also existed about the place can arranging nozzle of air supply 3 limits.Verified, the nozzle of air supply 3 of air supply system 1 is arranged in this height (relative to axial direction A), make the spacing of nozzle of air supply 3 and top dead center particularly preferably equal 50% to 60% of the spacing between top dead center and lower dead center, be actually extraordinary balance.
Find, if nozzle of air supply 3 is arranged in this height (for axial direction A), make nozzle of air supply 3 and the spacing of scavenging air slit top edge (" top edge " relative to the typical use position of internal-combustion engine) preferably equal the spacing of scavenging air slit top edge and top dead center less than 50% and particularly preferably equal its 30% to 40%, be then particularly preferred relative to the position of air slots.
Except fuel gas 5 can be made to have except little jet pressure, the advantage that the preferred arrangements of nozzle of air supply 3 also has is, between nozzle of air supply 3 and scavenging air valve or outlet valve, there is Large space relative to axial direction A.Thus, on the one hand, avoid the overwhelming majority in the fuel gas 5 injected to overflow under non-burning state outlet valve, on the other hand, the time of closed row air valve is more.
In addition, relative to the air/fuel gaseous mixture of homogeneity as far as possible, the preferred arrangements of suction valve 3 is also favourable.Due to relative to the early stage injected fuel gas 5 of the compression stroke of piston, scavenging air and fuel gas is caused to have time enough to mix nearly before ignition mixture.This causes the combustion process in combustion space 42 to be best and discharges especially as far as possible lowly.
Mix relative to the ideal of scavenging air and fuel-air 5, if-as already mentioned-fuel gas 5 is injected in the combustion space 42 of cylinder 4 relative to radial direction with the injection angle β being not equal to zero degree, then be also favourable.Mixing strong especially occurs with scavenging air thus, and scavenging air is carried in cylinder 4 or in combustion space 42 by spiral usually in the compression stroke of piston.
Also can two or more this air supply system 1 or two or more nozzles of air supply 3 with suction valve 2 be set in the cylinder with following a well mapped-out plan.
Be appreciated that the embodiments of the present invention described in the application also can be dependent on application and combine by any suitable method, especially, the embodiment shown in accompanying drawing is only interpreted as citing.Technician recognizes that simply favourable other of described embodiments of the present invention improve immediately, and understands the present invention and naturally also contemplated these simple other and improve.

Claims (15)

1. the air supply system for stroke piston combustion engine, especially for the air supply system of uniflow scavenging large two-stroke diesel engine, wherein, described air supply system comprises the suction valve (2) with nozzle of air supply (3), described nozzle of air supply (3) is configured to described nozzle of air supply (3) and can be arranged in the cylinder wall (41) of the cylinder (4) of described stroke piston combustion engine, make the combustion space (42) that can be supplied to described cylinder (4) by the fuel gas (5) provided as fuel by the described nozzle of air supply (3) under the installment state of described air supply system, wherein, described suction valve (2) comprises pressure space (22), described pressure space (22) is arranged in valve shell (21), and described fuel gas (5) can be provided in described pressure space (22) via gas feed (23) to store in operational conditions and to be fed in described nozzle of air supply (3), described pressure space (22) is provided with valve body (6), described valve body (6) has the valve disc (62) that is arranged in valve shaft (61) place and has valve seat (63), described valve seat (63) coordinates hermetically with described valve disc (62) under the closed state of described valve body (6), make to forbid described fuel gas (5) to be fed to described nozzle of air supply (3) from described pressure space (22), and by operating with described valve shaft (61) valve actuator (7) be connected, described valve disc (62) can be lifted away from described valve seat (63), make described fuel gas (5) under the open mode of described valve body (6), described nozzle of air supply (3) can be fed to from described pressure space (22) through described valve disc (62), it is characterized in that, be provided with the monitoring system of the position for determining described valve body (6), described monitoring system is for monitoring the fuel gas flowed in described combustion space (42).
2. air supply system according to claim 1, wherein, described monitoring system is path sensor, and described path sensor is electricity or electromagnetic path sensor, specifically inductance, electric capacity or optical path sensor in particular.
3. air supply system according to claim 1 and 2, wherein, described monitoring system and monitoring cell carry out signal and to communicate and the position of described valve body (6) can be detected by described monitoring cell in operational conditions, make it possible to depend on the crank angle of described stroke piston combustion engine and/or depend on the scavenging air valve position of described stroke piston combustion engine and forbid fuel gas being fed to described nozzle of air supply (3).
4. according to air supply system in any one of the preceding claims wherein, wherein, for drive the described valve actuator (7) of described valve shaft (61) be machinery, electricity or air pressure valve driver (7), in particular hydrovalve driver (7).
5. according to air supply system in any one of the preceding claims wherein, wherein, in order to closed described valve body (6), be provided with the resetting means (8) worked against described valve actuator (7), the form of described resetting means (8) specifically in Returnning spring (81).
6. according to air supply system in any one of the preceding claims wherein, wherein, described valve shaft (61) is directed in the bullport (91) of shaft housing (9).
7. air supply system according to claim 6, wherein, hydraulic oil (10) can act on described bullport (91) under sealing load (PA), described sealing load (PA), higher than the fuel gas pressure (BG) of the described fuel gas (5) in described pressure space (22), makes it possible to substantially prevent described fuel gas (5) from infiltrating in described bullport (91).
8. according to air supply system in any one of the preceding claims wherein, wherein, described nozzle of air supply (3) is connected to described suction valve (2) removably and is connected to described cylinder wall (41) in removable mode, and the nozzle-axis (D) of described nozzle of air supply (3) is arranged to become predetermined angle (α) relative to the valve axis (V) of described suction valve (2), described fuel gas (5) under the operation and installation state of described air supply system can be injected in the described combustion space (42) of described cylinder (4) with the predetermined angle being not equal to zero relative to the radial direction of described cylinder (4) (R) and/or axial direction (A).
9. air supply system according to claim 8, wherein, described nozzle of air supply (3) has multiple nozzle opening (31).
10. air supply system according to claim 9, wherein, two nozzle openings (31) differently arrange, and described fuel gas (5) can be introduced in described combustion space (42) by two different injection angles.
11. air supply systems according to claim 8 or claim 9, wherein, two nozzle openings (31) are differently configured, and described fuel gas (5) can be introduced in described combustion space (42) with two different injection volumes and/or with two different flowing velocities and/or with two different injection geometrical shapies by described two nozzle openings (31).
12. 1 kinds of cylinders with the uniflow scavenging large two-stroke diesel engine of the air supply system (1) according to any one of claim 1 to 11, particularly, cylinder liner.
13. cylinders according to claim 12, wherein, described air supply system (1) is arranged in the region between the top dead center being in the piston of described stroke piston combustion engine in described cylinder (4) and lower dead center, particularly, described region is the region reaching 20% to 80%, preferably 45% to 65%, particularly preferably 50% to 60% of spacing between described top dead center and described lower dead center away from described top dead center of described cylinder (4).
14. 1 kinds of stroke piston combustion engines, described stroke piston combustion engine has the air supply system according to any one of claim 1 to 11 and has the cylinder according to claim 12 or 13, wherein, described stroke piston combustion engine is duel fuel engine, described duel fuel engine is for burning described fuel gas (5) and alternatively for other fuel that burn, especially, for burning diesel oil or heavy oil.
The method of 15. 1 kinds of operation stroke piston combustion engines according to claim 14, wherein, the fault of described air supply system (1) detected, described fuel gas is forbidden to be fed to described air supply system (1), and preferably automatically close described stroke piston combustion engine, and particularly preferably automatically switch to the operation undertaken by the alternative fuel of such as diesel oil or heavy oil.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110625325A (en) * 2019-11-18 2019-12-31 上海中船三井造船柴油机有限公司 Method for processing starting valve air inlet hole of diesel engine cylinder cover for dual-fuel ship
CN116568919A (en) * 2020-11-30 2023-08-08 戴姆勒卡车股份公司 Injectors for feeding gaseous fuels, especially direct injection, into combustion chambers of internal combustion engines and gas engines

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DK3147477T3 (en) 2015-09-23 2019-01-21 Winterthur Gas & Diesel Ag Gas supply system and cylinder liner for a piston combustion engine, piston combustion engine and method of operation of a piston combustion engine
JP2020016171A (en) * 2018-07-24 2020-01-30 株式会社Ihi Fuel injection device and engine system
DK181740B1 (en) * 2023-02-10 2024-11-18 Man Energy Solutions Filial Af Man Energy Solutions Se Tyskland Internal combustion engine and a method for admitting fuel gas into an internal combustion engine

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1259634B (en) * 1963-05-17 1968-01-25 Hans List Dipl Ing Dr Techn Gas-Otto engine
CN1422362A (en) * 2000-04-07 2003-06-04 韦斯特波特研究公司 A fluid seal apparatus and method for dynamically controlling sealing-fluid pressure
DE102007002402A1 (en) * 2006-12-13 2008-06-19 Siemens Ag Gas inlet, for a fuel gas to be blown into a motor cylinder, has a hydraulic stroke transformer to convert short actuator stokes into long needle stroke movements to open/close the flow opening
CN102782292A (en) * 2010-03-23 2012-11-14 丰田自动车株式会社 Fuel supply device for internal combustion engine
CN103026034A (en) * 2010-08-05 2013-04-03 株式会社Ihi two cycle engine
WO2013183737A1 (en) * 2012-06-06 2013-12-12 株式会社Ihi Two-stroke uniflow engine
WO2014034796A1 (en) * 2012-08-31 2014-03-06 株式会社Ihi Uniflow scavenging two-cycle engine

Family Cites Families (36)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3062198A (en) * 1961-11-17 1962-11-06 Nickles Machine Corp Gas engine fuel injection
FR1321539A (en) * 1962-02-07 1963-03-22 Soc Es Energie Sa Improvements made to internal combustion engines, in particular free-piston machines, injecting gaseous fuel
JPS5218507A (en) * 1975-08-05 1977-02-12 Nippon Soken Inc Two-cycle fuel injection engine
JPS58120868U (en) * 1982-02-12 1983-08-17 日産自動車株式会社 Combustion chamber direct injection fuel injection valve
JPS58173741U (en) * 1982-05-14 1983-11-19 株式会社クボタ Gas engine fuel gas supply device
JPS5911122U (en) * 1982-07-14 1984-01-24 三井造船株式会社 Fuel valve operation abnormality warning device
JPS5918243A (en) * 1982-07-23 1984-01-30 Nissan Motor Co Ltd Fuel injection pump
US4574754A (en) * 1982-08-16 1986-03-11 Rhoades Jr Warren A Stratified charge combustion system and method for gaseous fuel internal combustion engines
JPS61275570A (en) * 1985-05-15 1986-12-05 Nissan Motor Co Ltd Fuel injection advance angle measuring device of diesel engine
JPH0343412Y2 (en) * 1985-07-25 1991-09-11
US4957074A (en) 1989-11-27 1990-09-18 Siemens Automotive L.P. Closed loop electric valve control for I. C. engine
US5136986A (en) * 1991-04-26 1992-08-11 Energy Conversions, Inc. Dual fuel injection structure
DE59209671D1 (en) 1991-12-10 1999-05-06 New Sulzer Diesel France Sa Fuel injection valve for a reciprocating piston internal combustion engine for optional operation with diesel oil or with a gaseous fuel
JP2547144B2 (en) * 1992-01-17 1996-10-23 財団法人日本舶用機器開発協会 Fuel control device for dual fuel engine
DE4308775C1 (en) * 1993-03-19 1994-08-25 Daimler Benz Ag Gas injection valve for the injection of gaseous fuel, especially hydrogen, into the combustion chamber of an internal combustion engine
US5752489A (en) * 1997-02-10 1998-05-19 Cummins Engine Company, Inc. Integrated fuel measurement and control system for gaseous fuels
JP3814916B2 (en) * 1997-02-26 2006-08-30 トヨタ自動車株式会社 Fuel injection device for internal combustion engine
DK176118B1 (en) 1997-04-29 2006-09-04 Man B & W Diesel As Method of operating a diesel-fueled dual-fuel internal combustion engine and such engine
DE19815918A1 (en) 1998-04-09 1999-10-21 Man B & W Diesel As Fuel injector
JP2000027618A (en) * 1998-07-15 2000-01-25 Fuji Oozx Inc Electrodynamic valve drive for internal combustion engine
JP4029586B2 (en) * 2000-10-26 2008-01-09 株式会社日立製作所 Fuel injection valve
DE10230899B4 (en) 2002-07-09 2007-11-22 Siemens Ag Method for diagnosing a faulty valve lift position of an internal combustion engine
DE10326707B3 (en) * 2003-06-11 2005-01-27 Westport Germany Gmbh Valve device and method for injecting gaseous fuel
JP2006258008A (en) * 2005-03-18 2006-09-28 Toyota Motor Corp Internal combustion engine
JP2011001829A (en) 2009-06-16 2011-01-06 Yanmar Co Ltd Exhaust emission control device for gas engine
DE102010005814A1 (en) 2010-01-27 2011-07-28 Bayerische Motoren Werke Aktiengesellschaft, 80809 Exhaust gas system for internal combustion engine of passenger car, has exhaust manifold which is connected with exhaust tract in gas guiding manner, in which exhaust turbocharger is arranged
JP5401352B2 (en) * 2010-02-05 2014-01-29 株式会社ケーヒン Fuel switching control device and method
JP5587091B2 (en) * 2010-08-05 2014-09-10 株式会社ディーゼルユナイテッド 2-stroke gas engine
WO2012057310A1 (en) 2010-10-28 2012-05-03 株式会社Ihi Two-stroke engine
CN103748334B (en) 2011-07-08 2017-07-14 瓦锡兰瑞士有限公司 Internal combustion two-stroke engine, method of operating an internal combustion two-stroke engine, and method of converting a two-stroke engine
JP5820185B2 (en) * 2011-08-12 2015-11-24 株式会社Ihi 2-cycle engine
CA2767247C (en) * 2012-02-07 2014-03-25 Westport Power Inc. Apparatus and method for igniting a gaseous fuel in a direct injection internal combustion engine
JP5925104B2 (en) 2012-10-19 2016-05-25 三菱重工業株式会社 Fuel gas injection valve, dual fuel gas engine, and fuel gas injection valve injection method
JP2014098347A (en) * 2012-11-14 2014-05-29 Yanmar Co Ltd Dual fuel engine
JP2014098339A (en) * 2012-11-14 2014-05-29 Mitsubishi Heavy Ind Ltd Control device for diesel engine, diesel engine, and method for controlling diesel engine
JP2020197844A (en) * 2019-05-31 2020-12-10 大日本印刷株式会社 Face image determination system

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1259634B (en) * 1963-05-17 1968-01-25 Hans List Dipl Ing Dr Techn Gas-Otto engine
CN1422362A (en) * 2000-04-07 2003-06-04 韦斯特波特研究公司 A fluid seal apparatus and method for dynamically controlling sealing-fluid pressure
DE102007002402A1 (en) * 2006-12-13 2008-06-19 Siemens Ag Gas inlet, for a fuel gas to be blown into a motor cylinder, has a hydraulic stroke transformer to convert short actuator stokes into long needle stroke movements to open/close the flow opening
CN102782292A (en) * 2010-03-23 2012-11-14 丰田自动车株式会社 Fuel supply device for internal combustion engine
CN103026034A (en) * 2010-08-05 2013-04-03 株式会社Ihi two cycle engine
WO2013183737A1 (en) * 2012-06-06 2013-12-12 株式会社Ihi Two-stroke uniflow engine
WO2014034796A1 (en) * 2012-08-31 2014-03-06 株式会社Ihi Uniflow scavenging two-cycle engine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110625325A (en) * 2019-11-18 2019-12-31 上海中船三井造船柴油机有限公司 Method for processing starting valve air inlet hole of diesel engine cylinder cover for dual-fuel ship
CN110625325B (en) * 2019-11-18 2021-02-19 上海中船三井造船柴油机有限公司 Method for processing starting valve air inlet hole of diesel engine cylinder cover for dual-fuel ship
CN116568919A (en) * 2020-11-30 2023-08-08 戴姆勒卡车股份公司 Injectors for feeding gaseous fuels, especially direct injection, into combustion chambers of internal combustion engines and gas engines

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